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The repressor activity of Even-skipped is highly conserved, and is sufficient to activate engrailed and to regulate both the spacing and stability of parasegment boundaries.

机译:Even-skipped的阻遏物活性是高度保守的,足以激活突入并调节节段边界的间距和稳定性。

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During segmentation of the Drosophila embryo, even skipped is required to activate engrailed stripes and to organize odd-numbered parasegments. A 16 kb transgene containing the even skipped coding region can rescue normal engrailed expression, as well as all other aspects of segmentation, in even skipped null mutants. To better understand its mechanism of action, we functionally dissected the Even-skipped protein in the context of this transgene. We found that Even-skipped utilizes two repressor domains to carry out its function. Each of these domains can function autonomously in embryos when fused with the Gal4 DNA-binding domain. A chimeric protein consisting only of the Engrailed repressor domain and the Even-skipped homeodomain, but not the homeodomain alone, was able to restore function, indicating that the repression of target genes is sufficient for even skipped function at the blastoderm stage, while the homeodomain is sufficient to recognize those target genes. When Drosophila Even skipped was replaced by its homologs from other species, including a mouse homolog, they could provide substantial function, indicating that these proteins can recognize similar target sites and also provide repressor activity. Using this rescue system, we show that broad, early even skipped stripes are sufficient for activation of both odd- and even-numbered engrailed stripes. Furthermore, these 'unrefined' stripes organize odd-numbered parasegments in a dose-dependent manner, while the refined, late stripes, which coincide cell-for-cell with parasegment boundaries, are required to ensure the stability of the boundaries.
机译:果蝇胚胎的分割过程中,甚至需要跳过以激活卷入的条纹并组织奇数的节段。包含偶数跳过的编码区的16 kb转基因可以拯救偶数跳过的无效突变体中的正常表达以及片段化的所有其他方面。为了更好地了解其作用机理,我们在此转基因的背景下功能上分析了Even-skipped蛋白。我们发现,Even-skipped利用两个阻遏域来执行其功能。当与Gal4 DNA结合结构域融合时,这些结构域中的每一个都可以在胚胎中自主发挥功能。仅由Engrailed阻遏物结构域和Even-skipped同源结构域组成的嵌合蛋白,而不是单独的同源结构域,能够恢复功能,表明目标基因的阻遏足以在胚盘期甚至跳过功能,而同源结构域足以识别那些靶基因。果蝇果蝇被其他物种的同系物(包括小鼠同系物)取代后,它们可以提供重要的功能,表明这些蛋白质可以识别相似的靶位点,还可以提供阻遏物活性。使用此救援系统,我们显示出宽而早的甚至跳过的条纹足以激活奇数和偶数的出轨条纹。此外,这些“未精炼”的条带以剂量依赖的方式组织奇数的节段,而需要精化的后期条带,以确保每个节段与节段的边界重合,以确保边界的稳定性。

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